首页> 外文期刊>Molecular Microbiology >Concerted inhibition of the transcriptional activation functions of the enhancer-binding protein NIFA by the anti-activator NIFL.
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Concerted inhibition of the transcriptional activation functions of the enhancer-binding protein NIFA by the anti-activator NIFL.

机译:抗激活剂NIFL协同抑制增强子结合蛋白NIFA的转录激活功能。

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The Azotobacter vinelandii NIFL regulatory flavoprotein responds to the redox, energy and nitrogen status of the cell to inhibit transcriptional activation by the sigmaN-dependent enhancer binding protein, NIFA, via the formation of a NIFL-NIFA protein complex. The NIFA protein contains three domains: an N-terminal domain of unknown function; a central catalytic domain required to couple nucleotide hydrolysis to activation of the sigmaN-RNA polymerase holoenzyme; and a C-terminal DNA-binding domain. We report that truncated NIFA proteins that either lack the amino-terminal domain or contain only the isolated central domain remain responsive to inhibition by NIFL but, in contrast to native NIFA, continue to hydrolyse nucleotides when NIFL is present. We also report that NIFL is competent to inhibit the DNA-binding function of NIFA. Taken together, these results suggest that NIFL inhibits NIFA via a concerted mechanism in which DNA binding, catalytic activity and, potentially, interaction with the polymerase are controlled by NIFL in order to prevent transcriptional activation under detrimental environmental conditions.
机译:葡萄固氮菌NIFL调节性黄素蛋白通过形成NIFL-NIFA蛋白复合物来响应细胞的氧化还原,能量和氮状态,从而抑制依赖于sigmaN的增强子结合蛋白NIFA的转录激活。 NIFA蛋白包含三个域:功能未知的N末端域;将核苷酸水解与sigmaN-RNA聚合酶全酶激活结合所需的中央催化结构域;和C端DNA结合结构域。我们报道,缺少氨基末端结构域或仅包含分离的中央结构域的截短的NIFA蛋白仍然对NIFL的抑制有响应,但是与天然NIFA相反,当存在NIFL时,其继续水解核苷酸。我们还报告说NIFL有能力抑制NIFA的DNA结合功能。综上所述,这些结果表明NIFL通过协同机制抑制NIFA,其中DNA结合,催化活性以及潜在地与聚合酶的相互作用受NIFL控制,以防止在有害环境条件下的转录激活。

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